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    • 3. 发明授权
    • Method for examining a specimen
    • 检查样本的方法
    • US06738190B2
    • 2004-05-18
    • US09947334
    • 2001-09-05
    • Johann EngelhardtJuergen HoffmannWerner Knebel
    • Johann EngelhardtJuergen HoffmannWerner Knebel
    • G02B2100
    • G02B21/0076G02B21/0024G02B21/0032G02B21/008
    • A method for examining a specimen (11) by means of a confocal scanning microscope having at least one light source (1), preferably a laser, to generate an illuminating light beam (4) for the specimen (11), and a beam deflection device (9) to guide the illuminating light beam (4) over the specimen (11) comprises the following method steps: Firstly a preview image is acquired. Then at least one region of interest in the preview image is marked. This is followed by allocation of individual illuminating light beam wavelengths and/or illuminating light beam power levels to the region or regions. Illumination of the region or regions of the specimen (11) in accordance with the allocation is then accomplished. Lastly, the reflected and/or fluorescent light proceeding from the specimen (11) is detected.
    • 一种通过具有至少一个光源(1)(优选为激光)的共焦扫描显微镜检查样本(11)以产生用于样本(11)的照明光束(4)的方法,以及光束偏转 将照明光束(4)引导到试样(11)上方的装置(9)包括以下方法步骤:首先获取预览图像。 然后,标记预览图像中的至少一个感兴趣区域。 随后将各个照明光束波长和/或照射光束功率电平分配给该区域。 然后根据分配对样品(11)的区域或区域进行照明。 最后,检测从样品(11)进行的反射和/或荧光。
    • 4. 发明授权
    • Method for examining a specimen, and confocal scanning microscope
    • US06614031B2
    • 2003-09-02
    • US09946695
    • 2001-09-04
    • Johann EngelhardtJuergen HoffmannWerner Knebel
    • Johann EngelhardtJuergen HoffmannWerner Knebel
    • H01N21268
    • G01N21/6458G02B21/0048G02B21/0076G02B21/008
    • A method for examining a specimen (11) by means of a confocal scanning microscope having at least one light source (1), preferably a laser, to generate an illuminating light beam (4) for the specimen (11), and a beam deflection device (9) to guide the illuminating light beam (4) over the specimen (11) comprises, in the interest of reliable definition of details or regions of interest of the specimen (11), the following method steps: Firstly a preview image is acquired. Then at least one region of interest in the preview image is marked. This is followed by allocation of individual illuminating light beam wavelengths and/or illuminating light beam power levels to the region or regions. Illumination of the region or regions of the specimen (11) in accordance with the allocation is then accomplished, at least one manipulation in at least one region (25) being performed by means of the illumination. Also described is a confocal scanning microscope having at least one light source (1), preferably a laser, to generate an illuminating light beam (4) for a specimen (11), and a beam deflection device (9) to guide the illuminating light beam (4) over the specimen (11), means for acquiring a preview image and means for marking at least one region of interest in the preview image being provided, such that individual illuminating light beam wavelengths and/or illuminating light beam power levels can be allocated to the region or regions, and the region or regions of the specimen (11) can be illuminated in accordance with the allocation, and such that at least one manipulation in at least one region (25) can be performed by means of the illumination.
    • 6. 发明申请
    • DEVICE FOR CONNECTING TWO COMPONENTS
    • 用于连接两个组件的设备
    • US20120155951A1
    • 2012-06-21
    • US13165891
    • 2011-06-22
    • Hubert LoeweJuergen HoffmannKlaus HockAnett Kilian
    • Hubert LoeweJuergen HoffmannKlaus HockAnett Kilian
    • B62D25/12E05C17/12
    • F16C11/0623F16C11/12Y10T403/32573Y10T403/32606Y10T403/32737Y10T403/32803
    • A device for connecting two components, in particular a linkage of bars (38) and an engine hood (40), has a fastening element (10) and a securing element (24) cooperating with the fastening element (10). The fastening element (10) includes a fastening section (18) for connecting the fastening element (10) with the first component and a receiving section (12) for mounting the second component. The securing element (24) includes first and second securing sections (26, 28) and is transferable to a final assembly position, in which the first securing section (26) secures the connection of the fastening element (10) with the first component and at the same time the second securing section (28) secures the mounting of the second component in the receiving section (12). A method of connecting two components, in particular a linkage of bars (38) and an engine hood (40), by means of such a device includes the steps of: fastening the fastening section (18) of the fastening element (10) to the first component; mounting the second component in the receiving section (12) of the fastening element (10); and transferring the securing element (24) to the final assembly position for simultaneously securing the connection of the fastening element (10) with the first component and the mounting of the second component in the receiving section (12).
    • 用于连接两个部件,特别是杆(38)和发动机罩(40)的连杆的装置具有紧固元件(10)和与紧固元件(10)配合的固定元件(24)。 紧固元件(10)包括用于将紧固元件(10)与第一部件连接的紧固部分(18)和用于安装第二部件的接收部分(12)。 固定元件(24)包括第一和第二固定部分(26,28),并且可转移到最终组装位置,第一固定部分(26)固定紧固元件(10)与第一部件的连接, 同时第二固定部分(28)将第二部件的安装固定在接收部分(12)中。 通过这种装置连接两个部件,特别是杆(38)和发动机罩(40)的连杆的方法包括以下步骤:将紧固元件(10)的紧固部分(18)紧固到 第一部分; 将所述第二部件安装在所述紧固元件(10)的所述接收部分(12)中; 以及将所述固定元件(24)转移到所述最终组装位置,以同时将所述紧固元件(10)与所述第一部件的连接和所述第二部件安装在所述接收部分(12)中。
    • 8. 发明授权
    • Apparatus for selecting and detecting at least one spectral region of a spectrally spread light beam
    • 用于选择和检测光谱扩展光束的至少一个光谱区域的装置
    • US06483103B2
    • 2002-11-19
    • US09783220
    • 2001-02-15
    • Johann EngelhardtWilliam C. HayJuergen Hoffmann
    • Johann EngelhardtWilliam C. HayJuergen Hoffmann
    • G01J328
    • G02B21/0064G01J3/32
    • An apparatus for selecting and detecting at least one spectral region of a spectrally spread light beam, preferably in the beam path of a confocal scanning microscope, the spread light beam being focussable in a focal line, is characterized, for non-overlapping detection of the spectrally spread light beam of the selected spectral regions in the context of an increased number of detectors and an error-tolerant arrangement, in that there is arranged in the spread light beam an optical component which reflects and/or refracts the light beam to a detector and whose optically effective region becomes smaller or larger along the surface, so that by orientation of the component with respect to the focal line and the resulting superposition of the focal line and surface, the spectral region arriving at the detector is definable.
    • 一种用于选择和检测光谱扩展光束的至少一个光谱区域的装置,优选地在共聚焦扫描显微镜的光束路径中,扩散光束可聚焦在焦线中,其特征在于,对于不重叠的 在增加数量的检测器和容错布置的上下文中,所选择的光谱区域的光谱扩展光束,其中在扩展光束中布置了将光束反射和/或折射到检测器的光学部件 并且其光学有效区域沿着表面变得更小或更大,使得通过部件相对于焦线的取向以及所得焦点线和表面的叠加,到达检测器的光谱区域是可定义的。